Comment Done
ifos โ€ข paper_1 โ€ข electrodynamics

[UPSC IFoS 2014] Black Body Radiation (Q461, 8M)

Suppose a cavity of volume V contains blackbody radiation in equilibrium with the walls of the cavity at a temperature T. For a reversible adiabatic change of volume show that : VT^3 = \text{constant}. If the initial temperature is 2000^\circ\text{K} and the volume is increased from 10\text{ cm}^3 to 1250\text{ cm}^3, reversibly and adiabatically, what would be the final temperature of the radiation ?

Discussion (0)

Sign in to post a solution, derivation, or discussion.

No comments yet. Start the conversation!

Document & Diagram Scanner

Clean whiteboard & high-contrast scan with automatic image enhancement

Filter:
-- ร— -- pxCompressed: -- KB--% saved